个人简介
2013年6月获北京科技大学冶金工程专业学士学位 2019年1月获北京科技大学冶金工程专业博士学位 2019年3月进入北京科技大学冶金与生态学院钢铁冶金系进行教师博士后研究工作
近期论文
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[1] Haojian Duan, Ying Ren*, Lifeng Zhang*. Effects of Interphase Forces on Fluid Flow in Gas-Stirred Steel Ladles Using the Eulerian–Lagrangian Multiphase Approach [J]. JOM, 2018, 70(10): 2128–2138. (SCI, IF=2.145, Q1)
[2] Haojian Duan, Lifeng Zhang*, Brian G. Thomas, Alberto N. Conejo. Fluid Flow, Dissolution, and Mixing Phenomena in Argon-Stirred Steel Ladles [J]. Metallurgical and Materials Transactions B, 2018, 49(5): 2722–2743. (SCI, IF= 1.834, Q2)
[3] Haojian Duan, Piotr Roman Scheller, Ying Ren*, Lifeng Zhang*. Fluid Flow and Inclusion Behavior around Spherical-cap Bubbles [J]. JOM, 71(1): 69–77. (SCI, IF=2.145, Q1)
[4] Haojian Duan, Ying Ren*, Lifeng Zhang*. Inclusion Capture Probability Prediction Model for Bubble Floatation in Turbulent Steel Flow [J]. Metallurgical and Materials Transactions B, 50(1): 16–21. (SCI, IF= 1.834, Q2)
[5] Haojian Duan, Ying Ren*, Lifeng Zhang*. Agglomeration of Solid Inclusions in Molten Steel [J]. Metallurgical and Materials Transactions B, 50(1): 36–41. (SCI, IF= 1.834, Q2)
[6] Haojian Duan, Ying Ren*, Lifeng Zhang*. Initial Agglomeration of Non-wetted Solid Particles in High Temperature Melt [J]. Chemical Engineering Science, 196: 14–24. (SCI, IF= 3.306, Q1)
[7] Haojian Duan, Ying Zhang, Ying Ren*, Lifeng Zhang*. Distribution of TiN Inclusions in Ti-stabilized Ultra-pure Ferrite Stainless Steel Slab [J]. Journal of Iron and Steel Research International, (Online) (SCI, IF=1.126, Q3)
[8] Haojian Duan, Lifeng Zhang*, Brian G. Thomas. Effect of Melt Superheat and Alloy Size on the Mixing Phenomena in Argon‐Stirred Steel Ladles [J]. Steel Research International, (Online) (SCI, IF=1.424, Q2)
[9] Haojian Duan, Ying Ren*, Lifeng Zhang*. Fluid Flow, Thermal Stratification and Inclusion Motion during Holding Period in Steel Ladles [J]. Metallurgical and Materials Transactions B, (Online) (SCI, IF= 1.834, Q2)
[10] Haojian Duan, Ying Ren*, Lifeng Zhang*. Modeling of Turbulent Flow around Bubbles in Molten Steel [J]. Steel Research International, (Accepted) (SCI, IF=1.424, Q2)
[11] Haojian Duan, Lifeng Zhang*. Modeling of the agglomeration of Al2O3 inclusions in molten steel [A]. MS&T 2017 [C]. Pittsburg, USA, 2017. (EI)
[12] Haojian Duan, Lifeng Zhang*. Agglomeration of Al2O3 Inclusions in Molten Steel [A]. CSST2018 [C]. Tianjin, China, 2018: 521-525.
[13] Haojian Duan, Lifeng Zhang*. Modeling of the Attachment of Inclusions to Bubbles in Molten Steel [A]. STEELSIM2017[C]. Qingdao, China, 2017: 158-161.
[14] Haojian Duan, Lifeng Zhang*. Simulation on Multiphase Flow and Mixing Phenomena during Ladle Metallurgy Process [A]. The Eighth China-Korea Joint Symposium on Advanced Steel Technology[C]. Chongqing, China, 2016: 55-62.
[15] 段豪剑, 张立峰*, 任英, 张莹, 李实, 王立江. 超纯铁素体不锈钢表面白色条纹缺陷形成机理研究 [A]. 第十届中国钢铁年会暨第六届宝钢学术年会 [C]. 上海, 2015.10.
[16] Lifeng Zhang*, Haojian Duan. Fluid Flow Transport Phenomena in Argon-Stirred Steel Ladles [A]. The 5th International Conference on Process Development in Iron and Steelmaking[C]. Lulea, Sweden, 2016: 138-143
[17] Yang Liu, Lifeng Zhang*, Ying Zhang, Haojian Duan, Ying Ren, Wen Yang. Effect of sulfur in steel on transient evolution of inclusions during calcium treatment [J]. Metallurgical and Materials Transactions B, 2018, 49(2): 610-626.
[18] Yang Liu, Lifeng Zhang*, Haojian Duan, Ying Zhang, Yan Lou, Alberto N. Conejo. Extraction, thermodynamic analysis, and precipitation mechanism of mns-tin complex inclusions in low-sulfur steels [J]. Metallurgical and Materials Transactions A, 2016, 47(6): 3015-3025.
[19] Lifeng Zhang*, Ying Ren, Haojian Duan, Wen Yang, Liyuan Sun. Stability Diagram of Mg-Al-O System Inclusions in Molten Steel [J]. Metallurgical and Materials Transactions B, 2015, 46(4): 1-17.
[20] Ying Ren, Lifeng Zhang*, Wen Yang, Haojian Duan. Formation and Thermodynamics of Mg-Al-Ti-O Complex Inclusions in Mg-Al-Ti-Deoxidized Steel [J]. Metallurgical and Materials Transactions B, 2014, 45(6): 2057-2071.
[21] Wen Yang, Haojian Duan, Lifeng Zhang*, Ying Ren. Nucleation, growth, and aggregation of alumina inclusions in steel [J]. JOM, 2013, 65(9): 1173-1180.